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Updated 07/30/2008 05:53:19 -0700

Zim Mathematics  - Recycle Bin (Trash Mathematics / Work in Progress) 

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I am almost ashamed to admit it but some of my best ideas come from the Recycle Bin or Trash Mathematics

Managing Intelligence (Systems)  Systems/Intelligence Mathematics  Table of Contents

It has been attempted to manage World Situations by using a "Well Known" commodity of "Intelligence".  Using a method of Intelligence to make Intelligent decisions about Management of World situations. I show here some relationships of known Intelligent commodities which may be useful in making intelligent use of Intelligence. Also see Intelligence Math  in Expression / Formulas section a and Intelligence Systems?  in Math Art Section.

(IQX1 + ... + IQXN) / (IQA +....+IQZ) ;  Where a complete denominator of known Quotients and an as exhaustive as possible Numerator of unknown variable and otherwise  Quotients gives maximum quantitative Intelligence Quotient.

(IQX1 + ... + IQXN) / ((IQA +....+IQZ) - (IQA +....+IQZ)) ; Shows the relationship  of Negative known Intelligence Quotients and all other possible Intelligence Quotients giving maximum non quantitative  Intelligence Quotients.

Showing that negative intelligence can give maximum Intelligence. To me this makes some basic common sense. Where tying our Intelligence to the Known restricts Intelligent development and expression of Intelligence Quotients.  ....I am not sure how to determine a functionality of  a System of Intelligence(s).

This could be an example of "Knowledge Synthesis", achieved when/where "all things possible are known" and that the only way to achieve new knowledge is to subtract Knowledge. "Knowing Everything" being a Human Condition.

A Mathematical Expression of Intelligent Systems could be one of a Transformation over time with a conservation of factored know/conditions. The System of Intelligence would be the "Source" of Transformation.

A general system or system of intelligence can be produced using  Unsubordinate Fact principle where the factoring of any quantitative components gives unique qualitative result producing new information required for a System or System of Intelligence and by the factoring of any given know/conditions ( As in ROM) giving a Conservation of Information while producing the new information:     

 Nx(t) × (Ny(t) × (Know A +....+ Know Z)) 

The Qualitative factor of the System/Intelligence may be provided by the nature of   Ny  or  Nx where y or x  could  = Homo. Sapiens,  Brain Neurons,  or some component of some other "System".  N would be some physical quantitative factor;  t = time

 

Mass Media Mathematics   (Systems/Intelligence Mathematics)  Table of Contents

Mass Media Mathematics - Include Every (x), Some (x), Any (x) and No (x) parameters in Mass Media Communication. Other than just What, Who, When, Where, How. Example: Every (What) + Some (What) + Any (What) + No (What) + Every (Who) + .....  + ... etc.

I would like to explore the quantitative nature of Mass Media. Analyzing the quantitative nature of the source(s) and reciepient(s).  For example: 1 know × Ny  =  X know unit Ny   ..... and  the effect of Quantitative analysis of these relationships such as:  Ny × (Know A + Know B)2x => 2X Know unit Ny  ; => Gives an additional Quantitative magnitude  of Knowledge....This can be more readily seen by looking at Knowledge or Know A as a Know/Condition  A  where factoring two Conditions or Know / Conditions gives more information than the sum of two conditions.  The Quantitative factor in conserving information and Intelligence is significant . The Qualitative factor of the System/Intelligence may be provided by the nature of   Ny where y  could  = Homo. Sapiens,  Brain Neurons,  or some component of some other "System".  N would be some physical quantitative factor.

 This having possible applications in Mass Media Communication and in the Physical Sciences.  Explaining the  need for separate Species and why Understanding everything is not the sole option in Intelligence, but also preserving information. (Know A + Know B +.....+ Know Z ) => 26X Know . Knowing Every (x) alone does not constitute knowledge or provide for an existential System. Any (x) also provides the information needed for intelligence. (Know A + Know B +.....+ Know Z )  × Ny  or  Any(x)  × Every(x) . Saying that Knowing "Everything" is knowledge, is like saying knowing a Transformation is knowledge without knowing what is being transformed. The Property of Conservation of Information appears to be necessary to many more aspects of Life and maybe Systems in general, than we normally consider ......

The concern of generating information (See  Unsubordinate Fact)   and the concern of conserving information  are both part of a Intelligence System. But new information seems guaranteed for a system considering the existence of Unsubordinate fact.  More mathematics is needed to understand their relationship..... This also may help to understand my process or possible processes of Knowledge Synthesis,  mentioned in Intelligence Math .

 Critical Information     (Systems/Intelligence Mathematics)  Table of Contents

"Critical Information" could be reached by tinkering with the following expressions:

 Nx(t) ×/ Ny(t) ×/ (Know A +....+ Know Z) : By adjusting the factored know/conditions and the product Ny or  Nx of  the given information system.  Ny or  Nx  could be interpreted as  a population, an Intelligence System (ie Brain), physical/informational System.  N would be the numeric component and x or y the qualitative component.  Nx(t) or Ny(t) can be further notated as: N(x,t) or f (x,t). Oh yes, t = time. N(y,t) should be a sub system and sub function of N(x,t); 

Nt would equal c (speed of light constant) where N is the principal system and in this case Universe system  and t = time.

For examples:
   Evaluate expressions from left to right.  These expressions are NOT a direct  paraphrase of E=mc2  .

  1. Nx(t) = Universe Principal System ; Ny(t) = System component of Concern; and note:  Nx(t) / Ny(t) × (Know A +....+ Know Z)

  2. Nx(t) = Universe Principal System ; Ny(t) = System component of Concern; and note:   Ny(t) × (Know A +....+ Know Z)  / Nx(t) note: Examples are Nx(t) is Energy; Ny(t) × (Know A +....+ Know Z) is mass  ×  speed of light

  3. Nx(t) = Earth Life Environment; Ny(t) = Specific Life System;  and note:  Nx(t) × Ny(t) ×/ (Know A +....+ Know Z)

  4. Nx(t) = Earth Life Environment + Universe Context ; Ny(t) = Specific Life System; and note:  Nx(t) × Ny(t) ×/ (Know A +....+ Know Z)

The following graphs illustrate the possible relationships giving types of Critical Information. The following functional expression illustrates these functional possibilities: f(N1(x,t), N2(y,t),t)  stating approximately:  Nx(t) ×/ Ny(t) ×/ (Know A +....+ Know Z) :

System per Sub System Sub System per System; Example: System = Energy, Sub System = mass * speed of light constant, Sub System * System  Sub System (Life Unit) *  System (Uni Context)

A Mathematical and Existential "Moral" to a Transformation by vs. from a sub system and sub function to a principal system and function?
ie is information lost or gained or changed and in which example......

Also note: Ny(t) and  Know A - Know Z can be considered and modeled as a System/Sub System   using the System/God Transformation and Relational System Transformation and their components: Every(x); Any(x); Some(x); Non(x); where the components are interchangeable within each existential System and can be worked with Mathematically, accordingly.

This is a work in progress! 07/30/2008 05:53:19 AM

 

Author - Zim Olson     Top of Page